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High-Density Black EVA Automotive Cushion Pads - Shock Absorption & Vibration Damping from China Suppliers and Factory

Introducing our Black EVA Automotive Cushion Pads, engineered in China to deliver outstanding performance for the automotive industry. These high-quality pads act as superior shock-absorbing materials, effectively providing excellent vibration damping and noise reduction. Our products are perfect for various applications, including engine bays, door panels, and electronic components. As a reliable manufacturer and supplier, our factory adheres to stringent quality standards, ensuring durability and weather resistance in every pad. Trust our Black EVA Automotive Cushion Pads for your automotive needs and experience the difference in performance and reliability

    Product Details

    Usage/ Application

    Door vibration dampers

    Engine bay noise insulation

    Dashboard shock absorption

    Battery pack padding

    Chassis vibration control

    Color

    Black

    Shape

    As per customer specification

    Hardness

    55 Shore A

    Shrinkage

    <= 5.0 % @Temperature 70.0 DegreeC, Time 605000 sec

    Material

    EVA Foam

    Use

    Packaging

    Pattern

    Plain

    Country of Origin

    Made in China

    Material characteristics

    Superior Cushioning High-density EVA foam (40-70A Shore hardness) absorbs vibrations and impacts, protecting critical parts.
    Heat & Aging Resistance Stable performance from -40℃ to 120℃, ensuring long-term durability.
    Anti-Static Option (for electronics) Some variants feature ESD protection (10⁶-10⁹Ω surface resistance).
    Lightweight 30% lighter than rubber pads, improving fuel efficiency.
    Eco-Friendly Complies with RoHS & REACH standards, recyclable and sustainable.

    Scope of Application

    Body Structure Protection
    • Door vibration dampers, trunk floor padding
    • Roof liner sound insulation, seat base shock absorption
    • Energy-absorbing layers inside bumpers
    Powertrain Applications
    • Engine bay noise-reducing pads (high-temperature resistant)
    • Transmission mount vibration isolators
    • Exhaust pipe heat insulation mats
    Electronic Component Protection
    • ECU (Engine Control Unit) anti-vibration mounts
    • Radar/camera module cushions (ESD-safe)
    • Wire harness friction-proof liners
    New Energy Vehicle Solutions
    • Battery pack top/bottom cushioning layers
    • Charging port shock-absorbing rings
    • Electric motor suspension damping pads
    Commercial & Specialty Vehicles
    • Truck cab suspension systems
    • Construction equipment hydraulic unit protection
    • RV furniture edge guards
    Custom Automotive Modifications
    • Audio system vibration isolation
    • Air suspension auxiliary pads
    • Roll cage protective wrapping for race cars

    Frequently Asked Questions

    What is the primary material used for these vibration dampers?

    The dampers are manufactured using high-density EVA (Ethylene-Vinyl Acetate) foam, which provides exceptional cushioning, shock absorption, and long-term durability.

    What is the hardness rating of the EVA foam?

    The standard hardness is 55 Shore A, but it can be customized within a range of 40-70A Shore hardness to meet specific customer requirements.

    Can this EVA foam withstand extreme temperatures?

    Yes, the material offers high heat and aging resistance, maintaining stable performance in temperatures ranging from -40℃ to 120℃.

    Are anti-static options available for sensitive electronics?

    Yes, we offer specialized variants with ESD protection featuring a surface resistance of 10⁶-10⁹Ω, ideal for safeguarding electronic modules like ECUs, radars, and cameras.

    Is the material environmentally friendly?

    Absolutely. Our EVA foam is fully compliant with RoHS and REACH standards. It is recyclable, sustainable, and free of harmful chemicals.

    Can the shape and size be customized?

    Yes, we fabricate the dampers precisely according to customer specifications, drawings, and unique application requirements.

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